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Integrating a Semitransparent, Fullerene-Free Organic Solar Cell in Tandem with a BiVO4 Photoanode for Unassisted Solar Water Splitting

机译:用Bivo4 PhotoNode集成半透明,无甾烯有机太阳能电池,用于脱阳光膜,用于无批准的太阳能分裂

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We report an unassisted solar water splitting system powered by a diketopyrrolopyrrole (DPP)-containing semitransparent organic solar cell. Two major merits of this fullerene-free solar cell enable its integration with a BiVO4 photoanode. First is the high open circuit voltage and high fill factor displayed by this single junction solar cell, which yields sufficient power to effect water splitting when serially connected to an appropriate electrode/catalyst. Second, the wavelength resolved photoaction spectrum of the DPP-based solar cell has minimal overlap with that of the BiVO4 photoanode, thus ensuring that light collection across these two components can be optimized. The latter feature enables a new water splitting device configuration wherein the solar cell is placed first in the path of incident light, before the BiVO4 photoanode, although BiVO4 has a wider bandgap. This configuration is accessed by replacing the reflective top electrode of the standard DPP-based solar cell with a thin metal film and an antireflection layer, thus rendering the solar cell semitransparent. In this configuration, incident light does not travel through the aqueous electrolyte to reach the solar cell or photoanode, and therefore, photon losses due to the scattering of water are reduced. Moreover, this new configuration allows the BiVO4 photoanode to be back-illuminated, i.e., through the BiVO4/back contact interface, which leads to higher photocurrents compared to front illumination. The combination of a semitransparent single junction solar cell and a BiVO4 photoanode coated with oxygen evolution catalysts in a new device configuration yielded an unassisted solar water splitting system with a solar-to-hydrogen conversion efficiency of 2.2% in water.
机译:我们报告了由二酮吡咯(DPP)的无透明太阳能分裂系统 - 甲型半透明有机太阳能电池。这种无甾烯的太阳能电池的两个主要优点使其与BIVO4 PhotoNode集成。首先是该单结太阳能电池显示的高开路电压和高填充因子,其在串联连接到适当的电极/催化剂时产生足够的功率以实现水分裂。其次,基于DPP的太阳能电池的波长分辨的光学加法谱具有与BIVO4光电码的重叠很小,从而确保可以优化这两个部件的光集合。后一种特征使得新的水分裂装置配置,其中太阳能电池首先在入射光的路径中放置,虽然Bivo4具有更宽的带隙。通过用薄金属膜和抗反射层更换标准DPP的太阳能电池的反射顶电极来访问该配置,从而使太阳能电池半透明。在这种配置中,入射光不会通过水电解质行进以到达太阳能电池或光电码,因此,由于水的散射而导致的光子损耗减小。此外,这种新配置允许BIVO4 PhotoNode将被返回照明,即通过BIVO4 /后接触界面,与前照照明相比导致更高的光电流。半透明单结太阳能电池和在新器件配置中涂覆有氧进化催化剂的Bivo4光电码的组合产生了一个难以置的太阳能水分裂系统,在水中的太阳能 - 氢转化效率为2.2%。

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